WO2023125525A1 - 用于换热器的换热组件和换热器 - Google Patents

用于换热器的换热组件和换热器 Download PDF

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Publication number
WO2023125525A1
WO2023125525A1 PCT/CN2022/142299 CN2022142299W WO2023125525A1 WO 2023125525 A1 WO2023125525 A1 WO 2023125525A1 CN 2022142299 W CN2022142299 W CN 2022142299W WO 2023125525 A1 WO2023125525 A1 WO 2023125525A1
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WIPO (PCT)
Prior art keywords
heat exchange
heat exchanger
heat
fins
assembly
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PCT/CN2022/142299
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English (en)
French (fr)
Inventor
袁晶
李艳星
刘玉宝
杨静
杨雪梅
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丹佛斯有限公司
袁晶
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Application filed by 丹佛斯有限公司, 袁晶 filed Critical 丹佛斯有限公司
Publication of WO2023125525A1 publication Critical patent/WO2023125525A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/02Tubular elements of cross-section which is non-circular
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/10Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses
    • F28F1/12Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element
    • F28F1/14Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending longitudinally
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/10Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses
    • F28F1/12Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element
    • F28F1/14Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending longitudinally
    • F28F1/16Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending longitudinally the means being integral with the element, e.g. formed by extrusion
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates

Definitions

  • Embodiments of the present invention relate to a heat exchange assembly for a heat exchanger and a heat exchanger including the heat exchange assembly.
  • a heat exchanger generally includes heat exchange tubes such as flat tubes and corrugated fins disposed between the flat tubes.
  • An object of embodiments of the present invention is to provide a heat exchange assembly for a heat exchanger and a heat exchanger including the heat exchange assembly, whereby, for example, production costs can be reduced.
  • An embodiment of the present invention provides a heat exchange assembly for a heat exchanger, the heat exchange assembly includes: a heat exchange tube through which a heat exchange medium flows, the heat exchange tube has a plate shape, and has a a first surface and a second surface opposite in the thickness direction of the heat exchange tube; and a plurality of fins protruding from at least one of the first surface and the second surface of the heat exchange tube.
  • the heat exchange tube includes a plurality of channels through which the heat exchange medium flows, and the plurality of channels extend in the length direction of the heat exchange tube and extend across the width of the heat exchange tube. aligned in the direction.
  • the plurality of fins extend in the length direction of the heat exchange tube, and the plurality of fins are arranged and spaced apart in the width direction of the heat exchange tube.
  • the fin has a plurality of spaced apart grooves penetrating the fin in the thickness direction of the fin.
  • the fins extend in the length direction of the heat exchange tube, and the grooves of the plurality of fins are aligned in the width direction of the heat exchange tube.
  • the fin has a plurality of spaced apart openings passing through the fin in the thickness direction of the fin.
  • the fin further has a flange connected to the edge of the opening.
  • the fins extend in the length direction of the heat exchange tube, and the openings of the plurality of fins are aligned in the width direction of the heat exchange tube.
  • the fin protrudes from each of the first surface and the second surface of the heat exchange tube.
  • the fins are perpendicular to the at least one of the first surface and the second surface of the heat exchange tube.
  • the heat exchange tube and the plurality of fins are integrated.
  • the heat exchange tube and the plurality of fins are integrally formed by extrusion.
  • the heat exchange tube is one heat exchange tube.
  • a heat exchanger which includes the above-mentioned heat exchange assembly for a heat exchanger.
  • the heat exchange component is a plurality of heat exchange components
  • the heat exchanger further includes a connection part, and the connection part connects two adjacent heat exchange components among the plurality of heat exchange components.
  • the heat exchange tubes connect and fluidly communicate the heat exchange tubes of two adjacent heat exchange components so that the plurality of heat exchange components are connected in series.
  • multiple heat exchange components and connecting parts are formed by bending a single heat exchange component.
  • the connecting part includes a connecting pipe.
  • the heat exchanger further includes: an inlet header for supplying heat exchange medium to the heat exchange tubes of the heat exchange assembly;
  • the heat exchange tubes of the assembly discharge the heat exchange medium.
  • At least one of the inlet header and the outlet header includes a sleeve portion, and the sleeve portion is sleeved on an end portion of a heat exchange tube of the heat exchange assembly.
  • the heat exchange assembly for a heat exchanger and the heat exchanger including the heat exchange assembly according to the embodiments of the present invention can, for example, reduce production costs.
  • FIG. 1 is a schematic perspective view of a heat exchange assembly for a heat exchanger according to an embodiment of the present invention
  • Fig. 2 is a schematic front view of the heat exchange assembly shown in Fig. 1;
  • Fig. 3 is a schematic top view of the heat exchange assembly shown in Fig. 1;
  • Fig. 4 is a schematic cross-sectional view of the heat exchange assembly shown in Fig. 1;
  • Fig. 5 is a schematic perspective view of a heat exchange assembly for a heat exchanger according to a modified example of an embodiment of the present invention
  • Fig. 6 is a schematic side view of the heat exchange assembly shown in Fig. 5;
  • FIG. 7 is a schematic perspective view of a heat exchange assembly for a heat exchanger according to another modification of the embodiment of the present invention.
  • Fig. 8 is a schematic perspective view of a heat exchange assembly for a heat exchanger according to yet another modification of the embodiment of the present invention.
  • Fig. 9 is a schematic top view of the heat exchange assembly shown in Fig. 8.
  • Figure 10 is a schematic cross-sectional view of the heat exchange assembly shown in Figure 8.
  • Fig. 11 is a schematic perspective view of a heat exchange assembly for a heat exchanger according to yet another modified example of the embodiment of the present invention.
  • a heat exchanger 100 includes: a heat exchange assembly 1 for a heat exchanger.
  • the heat exchange assembly 1 is a plurality of heat exchange assemblies 1, and the heat exchanger 100 further includes a connection part 5, and the connection part 5 connects phases in the plurality of heat exchange assemblies 1
  • the heat exchange tubes 10 of two adjacent heat exchange components 1 are connected and the heat exchange tubes 10 of two adjacent heat exchange components 1 are in fluid communication so that a plurality of heat exchange components 1 are connected in series.
  • a plurality of heat exchange components 1 are arranged in the thickness direction T of the heat exchange tube 10 .
  • the heat exchanger 100 also includes: an inlet header 2 for supplying heat exchange medium to the heat exchange tube 10 of the heat exchange assembly 1 ;
  • the heat exchange tube 10 discharges the heat exchange medium.
  • the inlet header 2 and the outlet header 2 are adapters, and the adapter is connected between the circular connecting pipe 3 and the heat exchange tube 10 to make the connecting pipe 3 and the heat exchange tube 10
  • the heat exchange tubes 10 are connected and fluidly communicated via adapters. More specifically, the inlet header 2 and the outlet header 2 include a sleeve part 21, and the sleeve part 21 is sleeved on the end of the heat exchange tube 10 of the heat exchange assembly 1, that is, sleeved on the end of the heat exchange assembly 1.
  • the inlet header 2 and the outlet header 2 may further include a transition portion 22 disposed between the sleeve portion 21 and the connection pipe 3 , and the sleeve portion 21 and the connection pipe 3 are connected and fluidly communicated via the transition portion 22 .
  • the inlet header 2 and the outlet header 2 are tubes with openings in the tube walls through which the heat exchange tubes 10 are connected and in fluid communication with the tubes.
  • the inlet header 2 is arranged on the lower side of the heat exchanger 100, and the outlet header 2 is arranged on the lower side of the heat exchanger 100. 100 on the upper side.
  • the connecting part 5 may include a connecting pipe, for example, the connecting pipe is the same connecting pipe as the heat exchange pipe 10, or the exchange pipe between two adjacent heat exchange components 1
  • the channels of the heat pipes 10 are connected in one-to-one correspondence, or the connection tubes that do not connect the channels of the heat exchange tubes 10 of two adjacent heat exchange components 1 in one-to-one correspondence, or are connected with a single lumen Tube.
  • a plurality of heat exchange components 1 and connecting parts 5 are formed by bending a single heat exchange component 1 .
  • a heat exchange assembly 1 for a heat exchanger 100 includes: a heat exchange tube 10 for a heat exchange medium to flow through, the heat exchange tube 10 has a plate shape, And have a first surface 11 and a second surface 12 opposite in the thickness direction T of the heat exchange tube 10; and extend from at least one of the first surface 11 and the second surface 12 of the heat exchange tube 10 out of a plurality of fins 15 .
  • the heat exchange tube 10 may be a flat tube. Referring to FIGS.
  • the plurality of fins 15 extend in the length direction L of the heat exchange tube 10 , and the plurality of fins 15 extend across the width of the heat exchange tube 10 aligned in direction W and spaced apart.
  • the fins 15 protrude from each of the first surface 11 and the second surface 12 of the heat exchange tube 10 .
  • the heat exchange tube 10 includes a plurality of passages 16 for the flow of the heat exchange medium, and the plurality of passages 16 are in the length of the heat exchange pipe 10 extending in the direction L and aligned in the width direction W of the heat exchange tubes 10 .
  • the plurality of passages 16 are in the length of the heat exchange pipe 10 extending in the direction L and aligned in the width direction W of the heat exchange tubes 10 .
  • at least some of the fins 15 when viewed in the thickness direction T of the heat exchange tube 10 , at least some of the fins 15 at least partially overlap the corresponding channel 16 or at least some of the fins 15 are inside the corresponding channel 16 .
  • the fin 15 has a plurality of spaced grooves 150 penetrating through the fin 15 in the thickness direction of the fin 15 .
  • the fins 15 extend in the length direction L of the heat exchange tube 10 , and the grooves 150 of the plurality of fins 15 are aligned in the width direction W of the heat exchange tube 10 .
  • each fin 15 is divided into a plurality of fin segments 15S, and the fin segments 15S are arranged in a matrix.
  • the fin segments 15S are aligned in the width direction W of the heat exchange tube 10 .
  • the groove 150 may have a rectangular shape or any other suitable shape.
  • the fin 15 has a plurality of spaced apart openings 151 penetrating through the fin 15 in the thickness direction of the fin 15 .
  • the fins 15 extend in the length direction L of the heat exchange tube 10 , and the openings 151 of the plurality of fins 15 are aligned in the width direction W of the heat exchange tube 10 .
  • the opening 151 has a circular shape, and in the embodiment shown in FIG. 7 , the opening 151 may also have any other suitable shape such as a rectangle or an ellipse. Referring to FIG. 5 and FIG.
  • the fin 15 may also have a flange 152 connected to the edge of the opening 151 .
  • the fins 15 are opened to form a louver-shaped window.
  • the opening 151 has a rectangular shape.
  • the opening 151 may also have any other suitable shape such as a circle, an ellipse, or the like.
  • the fins 15 are perpendicular to at least one of the first surface 11 and the second surface 12 of the heat exchange tube 10 . That is, the fins 15 protrude perpendicularly to the corresponding first surface 11 and the second surface 12 of the heat exchange tube 10 .
  • the heat exchange tube 10 and the plurality of fins 15 may be integrated.
  • the heat exchange tube 10 and the plurality of fins 15 are integrally formed by extrusion.
  • the heat exchange tube 10 may be one heat exchange tube 10 .
  • the heat exchange tube 10 and the plurality of fins 15 of the heat exchange assembly 1 are integrated, thereby eliminating the brazing process of the heat exchanger and saving costs.
  • the wind passes through the space between adjacent heat exchange components 1 of the heat exchanger in the width direction W of the heat exchange tube 10 .
  • the wind forms a turbulent airflow between the fins 15 of adjacent heat exchange components 1 , thereby enhancing the heat exchange performance between the air and the fins 15 .
  • the turbulence when the air flows through can be further enhanced, thereby further enhancing the heat transfer performance.
  • the fins are extruded together with the flat tube.
  • a microchannel flat tube with fins is thus formed.
  • the micro-channel flat tube with fins is repeatedly bent in a serpentine shape to form a heat exchanger with an air channel in the middle.
  • the heat exchange medium flows through the channels of the heat exchange tubes of the heat exchanger, and the wind flows through the heat exchanger through the channels between the fins, thereby achieving the purpose of heat exchange.
  • the inlet header 2 and the outlet header 2 include a sleeve portion 21 , and the sleeve portion 21 is sleeved on the end of the heat exchange tube 10 of the heat exchange assembly 1 .
  • the sleeve part 21 can increase the welding area between the inlet header 2 and the outlet header 2 and the end of the heat exchange tube 10, so that the inlet header 2, the outlet header 2 and the heat exchange tube 10 can be welded by laser welding, etc. The difficulty of welding and fixing is reduced, so that the heat exchanger does not need to be brazed in a brazing furnace, which saves manufacturing costs.
  • the production of the heat exchanging component according to the invention is simple, and the process of making it into a heat exchanger is simple, so the production cost can be reduced.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Geometry (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

一种用于换热器(100)的换热组件(1)和一种包括该换热组件(1)的换热器(100)。换热组件(1)包括:用于换热介质流过的换热管(10),所述换热管(10)具有板状形状,并且具有在所述换热管(10)的厚度方向上相对的第一表面(11)和第二表面(12);以及从所述换热管(10)的第一表面(11)和第二表面(12)中的至少一个表面伸出的多个翅片(15)。该换热组件(1)生产简单,制作成换热器(100)的工艺简单,因此可以降低生产成本。

Description

用于换热器的换热组件和换热器 技术领域
本发明的实施例涉及一种用于换热器的换热组件和一种包括该换热组件的换热器。
背景技术
换热器一般包括诸如扁管的换热管以及设置在扁管之间的波浪形翅片。
发明内容
本发明的实施例的目的是提供一种用于换热器的换热组件和一种包括该换热组件的换热器,由此,例如,可以降低生产成本。
本发明的实施例提供了一种用于换热器的换热组件,换热组件包括:用于换热介质流过的换热管,所述换热管具有板状形状,并且具有在所述换热管的厚度方向上相对的第一表面和第二表面;以及从所述换热管的第一表面和第二表面中的至少一个表面伸出的多个翅片。
根据本发明的实施例,所述换热管包括多个用于换热介质流过的通道,所述多个通道在所述换热管的长度方向上延伸并且在所述换热管的宽度方向上排列。
根据本发明的实施例,所述多个翅片在所述换热管的长度方向上延伸,并且所述多个翅片在所述换热管的宽度方向上排列并且间隔开。
根据本发明的实施例,所述翅片具有在翅片的厚度方向上贯穿翅片的多个间隔开的凹槽。
根据本发明的实施例,所述翅片在所述换热管的长度方向上延伸,并且多个翅片的凹槽在换热管的宽度方向上对齐。
根据本发明的实施例,所述翅片具有在翅片的厚度方向上贯穿翅片的多个间隔开的开口。
根据本发明的实施例,所述翅片还具有与所述开口的边缘连接的翻边。
根据本发明的实施例,所述翅片在所述换热管的长度方向上延伸,并且多个翅片的开口在换热管的宽度方向上对齐。
根据本发明的实施例,所述翅片从所述换热管的第一表面和第二表面中的每一个表面伸出。
根据本发明的实施例,所述翅片垂直于所述换热管的第一表面和第二表面中的所述至少一个表面。
根据本发明的实施例,所述换热管和所述多个翅片是一体的。
根据本发明的实施例,所述换热管和所述多个翅片通过挤压成型成一体。
根据本发明的实施例,所述换热管是一个换热管。
根据本发明的实施例,还提供了一种换热器,该换热器包括上述的用于换热器的换热组件。
根据本发明的实施例,所述换热组件为多个换热组件,并且所述换热器还包括连接部,所述连接部将多个换热组件中的相邻两个换热组件的换热管连接并使相邻两个换热组件的换热管流体连通使得多个换热组件串联连接。
根据本发明的实施例,多个换热组件和连接部由单个换热组件折弯形成。
根据本发明的实施例,所述连接部包括连接管。
根据本发明的实施例,所述换热器还包括:入口集流件,用于向所述换热组件的换热管供应换热介质;以及出口集流件,用于从所述换热组件的换热管排出换热介质。
根据本发明的实施例,所述入口集流件和出口集流件中的至少一个包括套管部,所述套管部套在所述换热组件的换热管的端部上。
根据本发明的实施例的用于换热器的换热组件和包括该换热组件的换热器例如可以降低生产成本。
附图说明
图1为根据本发明的实施例的用于换热器的换热组件的示意透视图;
图2为图1所示的换热组件的示意主视图;
图3为图1所示的换热组件的示意俯视图;
图4为图1所示的换热组件的示意剖视图;
图5为根据本发明的实施例的一个变形例的用于换热器的换热组件的示意透视图;
图6为图5所示的换热组件的示意侧视图;
图7为根据本发明的实施例的另一个变形例的用于换热器的换热组件的示意透视图;
图8为根据本发明的实施例的又一个变形例的用于换热器的换热组件的示意透视图;
图9为图8所示的换热组件的示意俯视图;
图10为图8所示的换热组件的示意剖视图;以及
图11为根据本发明的实施例的再一个变形例的用于换热器的换热组件的示意透视图。
具体实施方式
下面结合附图及具体实施方式对本发明做进一步说明。
参见图1至11,根据本发明的实施例的换热器100包括:用于换热器的换热组件1。在图示的实施例中,所述换热组件1为多个换热组件1,并且所述换热器100还包括连接部5,所述连接部5将多个换热组件1中的相邻两个换热组件1的换热管10连接并使相邻两个换热组件1的换热管10流体连通使得多个换热组件1串联连接。多个换热组件1在换热管10的厚度方向T上排列。所述换热器100还包括:入口集流件2,用于向所述换热组件1的换热管10供应换热介质;以及出口集流件2,用于从所述换热组件1的换热管10排出换热介质。在图1至图10所示的实施例中,入口集流件2和出口集流件2是转接头,转接头连接在圆形的连接管3与换热管10之间使连接管3与换热管10经由转接头连接并流体连通。更具体而言, 入口集流件2和出口集流件2包括套管部21,套管部21套在换热组件1的换热管10的端部上,即套在换热组件1的换热管10的端部的外侧。入口集流件2和出口集流件2还可以包括设置于套管部21和连接管3之间的过渡部22,套管部21和连接管3经由过渡部22连接并流体连通。在图11所示的实施例中,入口集流件2和出口集流件2是管,在该管的管壁中开口,换热管10通过该开口与该管连接并流体连通。例如,在图1、图2、图5至图8、图11所示的实施例中,入口集流件2设置在换热器100的下侧,而出口集流件2设置在换热器100的上侧。
参见图1至11,根据本发明的实施例,所述连接部5可以包括连接管,例如连接管是与换热管10相同的连接管,或者是将相邻两个换热组件1的换热管10的通道一一对应地连接的连接管,或者是将相邻两个换热组件1的换热管10的通道不一一对应地连接的连接管,或者是具有单个内腔的连接管。在图中所示的实施例中,多个换热组件1和连接部5由单个换热组件1折弯形成。
参见图1至11,根据本发明的实施例的用于换热器100的换热组件1包括:用于换热介质流过的换热管10,所述换热管10具有板状形状,并且具有在所述换热管10的厚度方向T上相对的第一表面11和第二表面12;以及从所述换热管10的第一表面11和第二表面12中的至少一个表面伸出的多个翅片15。换热管10可以是扁管。参见图1至11,根据本发明的示例,所述多个翅片15在所述换热管10的长度方向L上延伸,并且所述多个翅片15在所述换热管10的宽度方向W上排列并且间隔开。在图示的实施例中,所述翅片15从所述换热管10的第一表面11和第二表面12中的每一个表面伸出。
参见图4、图10,在本发明的实施例中,所述换热管10包括多个用于换热介质流过的通道16,所述多个通道16在所述换热管10的长度方向L上延伸并且在所述换热管10的宽度方向W上排列。根据本发明的示例,在所述换热管10的厚度方向T上观看时,至少一些翅片15与对应的通道16至少部分重叠或至少一些翅片15在对应的通道16内。
参见图8至图10,在本发明的实施例中,所述翅片15具有在翅片15的厚度方向上贯穿翅片15的多个间隔开的凹槽150。例如,所述翅片15在所述换热管10的长度方向L上延伸,并且多个翅片15的凹槽150在换热管10的宽度方向W上对齐。通过凹槽150,将每一个翅片15分隔成多个翅片段15S,翅片段15S呈矩阵状排列。翅片段15S在换热管10的宽度方向W上对齐。所述凹槽150可以具有矩形的形状或其它任何合适的形状。
参见图5至图7,在本发明的实施例中,所述翅片15具有在翅片15的厚度方向上贯穿翅片15的多个间隔开的开口151。根据本发明的示例,所述翅片15在所述换热管10的长度方向L上延伸,并且多个翅片15的开口151在换热管10的宽度方向W上对齐。在图7所示的实施例中,所述开口151具有圆形的形状,在图7所示的实施例中,所述开口151也可以具有矩形、椭圆形等其它任何合适的形状。参见图5和图6,所述翅片15还可以具有与所述开口151的边缘连接的翻边152。例如,对所述翅片15进行开窗而形成百叶窗状的开窗片。在图5和图6所示的实施例中,所述开口151具有矩形的形状。在图5和图6所示的实施例中,所述开口151也可以具有圆形、椭圆形等其它任何合适的形状。
参见图1至图11,在本发明的实施例中,所述翅片15垂直于所述换热管10的第一表面11和第二表面12中的所述至少一个表面。即,所述翅片15垂直于相应的所述换热管10的第一表面11和第二表面12地伸出。所述换热管10和所述多个翅片15可以是一体的。例如,所述换热管10和所述多个翅片15通过挤压成型成一体。所述换热管10可以是一个换热管10。
根据本发明的实施例的换热组件1的换热管10和多个翅片15是一体的,由此省去了换热器的钎焊工艺,节约了成本。
根据本发明的实施例的换热器100,风在换热管10的宽度方向W上通过换热器的相邻的换热组件1之间的空间。风在相邻的换热组件1的翅片15之间形成扰动的气流,从而增强空气与翅片15的换热性能。参见图5至图10,通过凹槽150、开口151、翻边152,可 以进一步增强空气流过时的扰动,从而进一步增强换热性能。
根据本发明的实施例,在挤压微通道扁管的阶段,将翅片与扁管一同挤压。因此形成了带有翅片的微通道扁管。这种带有翅片的微通道扁管经过反复蛇形折弯形成一个中间留有风道的换热器。在换热器工作时,换热介质流过换热器的换热管的通道,风通过翅片之间的通道流过换热器,从而起到换热的目的。
根据本发明的实施例,入口集流件2和出口集流件2包括套管部21,套管部21套在换热组件1的换热管10的端部上。套管部21可以增加入口集流件2和出口集流件2与换热管10的端部的焊接面积,使得入口集流件2和出口集流件2与换热管10通过激光焊等焊接固定的难度降低,由此,换热器不需要进钎焊炉钎焊,节约了制造成本。
根据本发明的换热组件生产简单,制作成换热器的工艺简单,因此可以降低生产成本。
尽管描述了上述实施例,但是上述实施例中的一些特征可以进行组合形成新的实施例。

Claims (19)

  1. 一种用于换热器的换热组件,包括:
    用于换热介质流过的换热管,所述换热管具有板状形状,并且具有在所述换热管的厚度方向上相对的第一表面和第二表面;以及
    从所述换热管的第一表面和第二表面中的至少一个表面伸出的多个翅片。
  2. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述换热管包括多个用于换热介质流过的通道,所述多个通道在所述换热管的长度方向上延伸并且在所述换热管的宽度方向上排列。
  3. 根据权利要求1或2所述的用于换热器的换热组件,其中:
    所述多个翅片在所述换热管的长度方向上延伸,并且所述多个翅片在所述换热管的宽度方向上排列并且间隔开。
  4. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述翅片具有在翅片的厚度方向上贯穿翅片的多个间隔开的凹槽。
  5. 根据权利要求4所述的用于换热器的换热组件,其中:
    所述翅片在所述换热管的长度方向上延伸,并且多个翅片的凹槽在换热管的宽度方向上对齐。
  6. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述翅片具有在翅片的厚度方向上贯穿翅片的多个间隔开的开口。
  7. 根据权利要求6所述的用于换热器的换热组件,其中:
    所述翅片还具有与所述开口的边缘连接的翻边。
  8. 根据权利要求6或7所述的用于换热器的换热组件,其中:
    所述翅片在所述换热管的长度方向上延伸,并且多个翅片的开口在换热管的宽度方向上对齐。
  9. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述翅片从所述换热管的第一表面和第二表面中的每一个表面伸出。
  10. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述翅片垂直于所述换热管的第一表面和第二表面中的所述至少一个表面。
  11. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述换热管和所述多个翅片是一体的。
  12. 根据权利要求11所述的用于换热器的换热组件,其中:
    所述换热管和所述多个翅片通过挤压成型成一体。
  13. 根据权利要求1所述的用于换热器的换热组件,其中:
    所述换热管是一个换热管。
  14. 一种换热器,包括:
    根据权利要求1至13中的任一项所述的用于换热器的换热组件。
  15. 根据权利要求14所述的换热器,其中:
    所述换热组件为多个换热组件,并且
    所述换热器还包括连接部,所述连接部将多个换热组件中的相邻两个换热组件的换热管连接并使相邻两个换热组件的换热管流体连通使得多个换热组件串联连接。
  16. 根据权利要求15所述的换热器,其中:
    所述多个换热组件和所述连接部由单个换热组件折弯形成。
  17. 根据权利要求15所述的换热器,其中:
    所述连接部包括连接管。
  18. 根据权利要求14所述的换热器,还包括:
    入口集流件,用于向所述换热组件的换热管供应换热介质;以及
    出口集流件,用于从所述换热组件的换热管排出换热介质。
  19. 根据权利要求18所述的换热器,其中:
    所述入口集流件和出口集流件中的至少一个包括套管部,所述套管部套在所述换热组件的换热管的端部上。
PCT/CN2022/142299 2021-12-29 2022-12-27 用于换热器的换热组件和换热器 WO2023125525A1 (zh)

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CN1099866A (zh) * 1993-08-28 1995-03-08 梅兰尼西亚国际信托有限公司 改进型热交换器部件
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CN104048543A (zh) * 2014-06-25 2014-09-17 上海理工大学 平齿纵向翅片管
CN205300345U (zh) * 2015-11-30 2016-06-08 仪征市永辉散热管制造有限公司 纵向开孔型翅片管
CN206056368U (zh) * 2016-08-18 2017-03-29 浙江康盛股份有限公司 一种扁状微通道直通式连接管
CN110608552A (zh) * 2018-06-15 2019-12-24 杭州三花微通道换热器有限公司 换热系统
CN113624056A (zh) * 2021-08-05 2021-11-09 浙江酷灵信息技术有限公司 换热器

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1099866A (zh) * 1993-08-28 1995-03-08 梅兰尼西亚国际信托有限公司 改进型热交换器部件
US20040261986A1 (en) * 2003-06-27 2004-12-30 Norsk Hydro A.S. Method of forming heat exchanger tubing and tubing formed thereby
CN104048543A (zh) * 2014-06-25 2014-09-17 上海理工大学 平齿纵向翅片管
CN205300345U (zh) * 2015-11-30 2016-06-08 仪征市永辉散热管制造有限公司 纵向开孔型翅片管
CN206056368U (zh) * 2016-08-18 2017-03-29 浙江康盛股份有限公司 一种扁状微通道直通式连接管
CN110608552A (zh) * 2018-06-15 2019-12-24 杭州三花微通道换热器有限公司 换热系统
CN113624056A (zh) * 2021-08-05 2021-11-09 浙江酷灵信息技术有限公司 换热器

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